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A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus

Receptors that distinguish the multitude of microbes surrounding plants in the environment enable dynamic responses to the biotic and abiotic conditions encountered. In this study, we identify and characterise a glycan receptor kinase, EPR3a, closely related to the exopolysaccharide receptor EPR3. E...

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Autores principales: Kelly, Simon, Hansen, Simon B., Rübsam, Henriette, Saake, Pia, Pedersen, Emil B., Gysel, Kira, Madland, Eva, Wu, Shunliang, Wawra, Stephan, Reid, Dugald, Sullivan, John T., Blahovska, Zuzana, Vinther, Maria, Muszynski, Artur, Azadi, Parastoo, Thygesen, Mikkel B., Aachmann, Finn L., Ronson, Clive W., Zuccaro, Alga, Andersen, Kasper R., Radutoiu, Simona, Stougaard, Jens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10231839/
https://www.ncbi.nlm.nih.gov/pubmed/37200394
http://dx.doi.org/10.1371/journal.pbio.3002127
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author Kelly, Simon
Hansen, Simon B.
Rübsam, Henriette
Saake, Pia
Pedersen, Emil B.
Gysel, Kira
Madland, Eva
Wu, Shunliang
Wawra, Stephan
Reid, Dugald
Sullivan, John T.
Blahovska, Zuzana
Vinther, Maria
Muszynski, Artur
Azadi, Parastoo
Thygesen, Mikkel B.
Aachmann, Finn L.
Ronson, Clive W.
Zuccaro, Alga
Andersen, Kasper R.
Radutoiu, Simona
Stougaard, Jens
author_facet Kelly, Simon
Hansen, Simon B.
Rübsam, Henriette
Saake, Pia
Pedersen, Emil B.
Gysel, Kira
Madland, Eva
Wu, Shunliang
Wawra, Stephan
Reid, Dugald
Sullivan, John T.
Blahovska, Zuzana
Vinther, Maria
Muszynski, Artur
Azadi, Parastoo
Thygesen, Mikkel B.
Aachmann, Finn L.
Ronson, Clive W.
Zuccaro, Alga
Andersen, Kasper R.
Radutoiu, Simona
Stougaard, Jens
author_sort Kelly, Simon
collection PubMed
description Receptors that distinguish the multitude of microbes surrounding plants in the environment enable dynamic responses to the biotic and abiotic conditions encountered. In this study, we identify and characterise a glycan receptor kinase, EPR3a, closely related to the exopolysaccharide receptor EPR3. Epr3a is up-regulated in roots colonised by arbuscular mycorrhizal (AM) fungi and is able to bind glucans with a branching pattern characteristic of surface-exposed fungal glucans. Expression studies with cellular resolution show localised activation of the Epr3a promoter in cortical root cells containing arbuscules. Fungal infection and intracellular arbuscule formation are reduced in epr3a mutants. In vitro, the EPR3a ectodomain binds cell wall glucans in affinity gel electrophoresis assays. In microscale thermophoresis (MST) assays, rhizobial exopolysaccharide binding is detected with affinities comparable to those observed for EPR3, and both EPR3a and EPR3 bind a well-defined β-1,3/β-1,6 decasaccharide derived from exopolysaccharides of endophytic and pathogenic fungi. Both EPR3a and EPR3 function in the intracellular accommodation of microbes. However, contrasting expression patterns and divergent ligand affinities result in distinct functions in AM colonisation and rhizobial infection in Lotus japonicus. The presence of Epr3a and Epr3 genes in both eudicot and monocot plant genomes suggest a conserved function of these receptor kinases in glycan perception.
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spelling pubmed-102318392023-06-01 A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus Kelly, Simon Hansen, Simon B. Rübsam, Henriette Saake, Pia Pedersen, Emil B. Gysel, Kira Madland, Eva Wu, Shunliang Wawra, Stephan Reid, Dugald Sullivan, John T. Blahovska, Zuzana Vinther, Maria Muszynski, Artur Azadi, Parastoo Thygesen, Mikkel B. Aachmann, Finn L. Ronson, Clive W. Zuccaro, Alga Andersen, Kasper R. Radutoiu, Simona Stougaard, Jens PLoS Biol Research Article Receptors that distinguish the multitude of microbes surrounding plants in the environment enable dynamic responses to the biotic and abiotic conditions encountered. In this study, we identify and characterise a glycan receptor kinase, EPR3a, closely related to the exopolysaccharide receptor EPR3. Epr3a is up-regulated in roots colonised by arbuscular mycorrhizal (AM) fungi and is able to bind glucans with a branching pattern characteristic of surface-exposed fungal glucans. Expression studies with cellular resolution show localised activation of the Epr3a promoter in cortical root cells containing arbuscules. Fungal infection and intracellular arbuscule formation are reduced in epr3a mutants. In vitro, the EPR3a ectodomain binds cell wall glucans in affinity gel electrophoresis assays. In microscale thermophoresis (MST) assays, rhizobial exopolysaccharide binding is detected with affinities comparable to those observed for EPR3, and both EPR3a and EPR3 bind a well-defined β-1,3/β-1,6 decasaccharide derived from exopolysaccharides of endophytic and pathogenic fungi. Both EPR3a and EPR3 function in the intracellular accommodation of microbes. However, contrasting expression patterns and divergent ligand affinities result in distinct functions in AM colonisation and rhizobial infection in Lotus japonicus. The presence of Epr3a and Epr3 genes in both eudicot and monocot plant genomes suggest a conserved function of these receptor kinases in glycan perception. Public Library of Science 2023-05-18 /pmc/articles/PMC10231839/ /pubmed/37200394 http://dx.doi.org/10.1371/journal.pbio.3002127 Text en © 2023 Kelly et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kelly, Simon
Hansen, Simon B.
Rübsam, Henriette
Saake, Pia
Pedersen, Emil B.
Gysel, Kira
Madland, Eva
Wu, Shunliang
Wawra, Stephan
Reid, Dugald
Sullivan, John T.
Blahovska, Zuzana
Vinther, Maria
Muszynski, Artur
Azadi, Parastoo
Thygesen, Mikkel B.
Aachmann, Finn L.
Ronson, Clive W.
Zuccaro, Alga
Andersen, Kasper R.
Radutoiu, Simona
Stougaard, Jens
A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus
title A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus
title_full A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus
title_fullStr A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus
title_full_unstemmed A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus
title_short A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus
title_sort glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume lotus japonicus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10231839/
https://www.ncbi.nlm.nih.gov/pubmed/37200394
http://dx.doi.org/10.1371/journal.pbio.3002127
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